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- W2914035331 endingPage "282" @default.
- W2914035331 startingPage "245" @default.
- W2914035331 abstract "As typical graphene analogues, two-dimensional (2D) transition-metal dichalcogenides (TMDs), including MoS2, WS2, etc., have attracted increasing research interest due to their semiconducting characteristics, sizable bandgap, large surface area, and outstanding performance in various applications such as electronics/optoelectronics, sensing, catalysis, and energy storage. For the widespread exploration of TMD nanosheets in fundamental studies and promising applications, a rapid pace of progress has recently been achieved in developing methodologies for reliable and scale-up production of atomically thin TMD nanosheets. In this chapter, we will present a comprehensive overview of different synthetic techniques of 2D TMDs and evaluate their relative merits and demerits. Particularly, the design principle, fabrication mechanism, typical process and special conditions will be emphasized to understand or follow the effective methods for obtaining required TMD nanosheets in single and few layers. Based on these synthetic techniques, further functionalization of TMD nanosheets with ligands and other nanocomponents are also discussed for gaining some specific properties. Based on our knowledge, we finally propose some possible challenges and potential opportunities in the exploitation of TMD nanosheets for novel applications." @default.
- W2914035331 created "2019-02-21" @default.
- W2914035331 creator A5087160354 @default.
- W2914035331 date "2019-02-04" @default.
- W2914035331 modified "2023-09-28" @default.
- W2914035331 title "Synthetic Techniques and Functionalization Approaches of 2D Transition Metal Dichalcogenides" @default.
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